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首页> 外文期刊>International Journal of Precision Engineering and Manufacturing >Effect of grain size on mechanical revolution of pure titanium and die cavity filling rate in hot squeezing mini spur-gear forming process
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Effect of grain size on mechanical revolution of pure titanium and die cavity filling rate in hot squeezing mini spur-gear forming process

机译:晶粒尺寸对热挤压迷你穗齿轮成型工艺纯钛和模腔灌装速率机械旋转的影响

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摘要

This study investigates the effect of grain size on the deformability of CP2 Titanium to form the mini spur gear in hot squeezing forming process. Experimental specimens are rods with a diameter of 5 mm and annealed with temperature in a range of 500 to 1000A degrees C to precipitate the different initial grain sizes individually. The mechanical properties and hardness of annealed specimens are measured. A mini spur gear die with a modulus of 0.915 and 8 teeth, made of H13 steel, is prepared. The annealed specimens are inserted in die and hot squeezed to form mini spur gear with a temperature of 500A degrees C. The experimental results show that the alpha-phase microstructure precipitates when the annealing temperature and holding time are 700A degrees C and 3 hours. The specimen with average initial grain size of 154.59 mu m results in the maximal elongation and die cavity-filling rate. Harnesses of addendum and dedendum circle are about 215 and 180 MPa that are higher than that of initial grain (107 MPa). The beta-phase microstructure precipitates when annealing temperature reaches to 900A degrees C resulting in brittle behavior.
机译:本研究研究了晶粒尺寸对CP2钛的可变形性的影响,形成了热挤压成形过程中的迷你正刺齿轮。实验标本是直径为5mm的棒,并在500至1000A℃的范围内退火,以单独沉淀不同的初始粒度。测量退火标本的机械性能和硬度。制备由20.915和8齿的模量制成的迷你正齿轮模数,由H13钢制成。退火标本插入模具和热挤压以形成迷你正常齿轮,温度为500A的C.实验结果表明,当退火温度和保持时间为700A的C和3小时时,α相微观结构沉淀。平均初始粒径为154.59μm的标本导致最大伸长率和模腔灌装速率。附录和专职圆圈的线束约为215和180MPa,高于初始谷物(107MPa)。当退火温度达到900A℃时,β相微观结构沉淀出来,导致脆性行为。

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